7. lampiran 7.1. dry basis) mi basah pasca …repository.unika.ac.id/14867/8/13.70.0108 rosita...)...

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50 7. LAMPIRAN 7.1. Lampiran 1a. Aktivitas Antioksidan (% Dry Basis) Mi Basah Pasca Perebusan Perlakuan Inhibition (% Dry Basis) Mi Basah Angkak 0% 3,2121 ± 0,3138 a Mi Basah Angkak 30% 3,7287 ± 0,3734 b Mi Basah Angkak 60% 4,6259 ± 0,4415 c Mi Basah Angkak 90% 5,5070 ± 0,4805 d 7.2. Lampiran 1b. Aktivitas Antioksidan (% Dry Basis) Mi Kering Pasca Perebusan Perlakuan Inhibition (% Dry Basis) Mi Kering Angkak 0% 2,4997 ± 0,2317 a Mi Kering Angkak 30% 3,2304 ± 0,3323 b Mi Kering Angkak 60% 4,1476 ± 0,4400 c Mi Kering Angkak 90% 5,2363 ± 0,5535 d 7.3. Lampiran 2a. Kadar Air (% Dry Basis) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi Basah Angkak 0% 185,254 ± 7,288 b Mi Basah Angkak 30% 178,628 ± 3,312 a Mi Basah Angkak 60% 186,138 ± 5,699 b Mi Basah Angkak 90% 198,113 ± 1,813 c 7.4. Lampiran 2b. Kadar Air (% Dry Basis) Mi Kering Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi Kering Angkak 0% 196,718 ± 6,020 b Mi Kering Angkak 30% 171,014 ± 1,240 a Mi Kering Angkak 60% 203,166 ± 18,070 b Mi Kering Angkak 90% 212,155 ± 16,199 b 7.5. Lampiran 3a. Hasil Analisa pH Mi Basah Pasca Perebusan Perlakuan pH Mi Basah Angkak 0% 8,32 ± 0,04 a Mi Basah Angkak 30% 8,36 ± 0,03 a Mi Basah Angkak 60% 8,36 ± 0,06 a Mi Basah Angkak 90% 8,35 ± 0,09 a

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Page 1: 7. LAMPIRAN 7.1. Dry Basis) Mi Basah Pasca …repository.unika.ac.id/14867/8/13.70.0108 Rosita...) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi 185Basah Angkak 0%

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7. LAMPIRAN

7.1. Lampiran 1a. Aktivitas Antioksidan (% Dry Basis) Mi Basah Pasca Perebusan

Perlakuan Inhibition (% Dry Basis)

Mi Basah Angkak 0% 3,2121 ± 0,3138a

Mi Basah Angkak 30% 3,7287 ± 0,3734b

Mi Basah Angkak 60% 4,6259 ± 0,4415c

Mi Basah Angkak 90% 5,5070 ± 0,4805d

7.2. Lampiran 1b. Aktivitas Antioksidan (% Dry Basis) Mi Kering Pasca

Perebusan

Perlakuan Inhibition (% Dry Basis)

Mi Kering Angkak 0% 2,4997 ± 0,2317a

Mi Kering Angkak 30% 3,2304 ± 0,3323b

Mi Kering Angkak 60% 4,1476 ± 0,4400c

Mi Kering Angkak 90% 5,2363 ± 0,5535d

7.3. Lampiran 2a. Kadar Air (% Dry Basis) Mi Basah Pasca Perebusan

Perlakuan Kadar Air (% Dry Basis)

Mi Basah Angkak 0% 185,254 ± 7,288b

Mi Basah Angkak 30% 178,628 ± 3,312a

Mi Basah Angkak 60% 186,138 ± 5,699b

Mi Basah Angkak 90% 198,113 ± 1,813c

7.4. Lampiran 2b. Kadar Air (% Dry Basis) Mi Kering Pasca Perebusan

Perlakuan Kadar Air (% Dry Basis)

Mi Kering Angkak 0% 196,718 ± 6,020b

Mi Kering Angkak 30% 171,014 ± 1,240a

Mi Kering Angkak 60% 203,166 ± 18,070b

Mi Kering Angkak 90% 212,155 ± 16,199b

7.5. Lampiran 3a. Hasil Analisa pH Mi Basah Pasca Perebusan

Perlakuan pH

Mi Basah Angkak 0% 8,32 ± 0,04a

Mi Basah Angkak 30% 8,36 ± 0,03a

Mi Basah Angkak 60% 8,36 ± 0,06a

Mi Basah Angkak 90% 8,35 ± 0,09a

Page 2: 7. LAMPIRAN 7.1. Dry Basis) Mi Basah Pasca …repository.unika.ac.id/14867/8/13.70.0108 Rosita...) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi 185Basah Angkak 0%

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7.6. Lampiran 3b. Hasil Analisa pH Mi Kering Pasca Perebusan

Perlakuan pH

Mi Kering Angkak 0% 8,31 ± 0,07a

Mi Kering Angkak 30% 8,33 ± 0,08a

Mi Kering Angkak 60% 8,31 ± 0,08a

Mi Kering Angkak 90% 8,34 ± 0,02a

7.7. Lampiran 4. Hasil Pengolahan SPSS

7.7.1. Normalitas

Tests of Normality

Kolmogorov-Smirnova Shapiro-Wilk

Statistic df Sig. Statistic df Sig.

Aktivitas Antioksidan (WB) .100 48 .200* .963 48 .138

Aktivitas Antioksidan (DB) .100 48 .200* .963 48 .137

Kadar Air (WB) .087 48 .200* .950 48 .039

Kadar Air (DB) .102 48 .200* .929 48 .007

Warna (L) .121 48 .074 .922 48 .003

Warna (a*) .127 48 .051 .907 48 .001

Warna (b*) .119 48 .084 .927 48 .005

Tensile Strengh .122 48 .071 .937 48 .012

pH .106 48 .200* .971 48 .269

a. Lilliefors Significance Correction

*. This is a lower bound of the true significance.

Tests of Normality

Kolmogorov-Smirnova Shapiro-Wilk

Statistic df Sig. Statistic df Sig.

Warna .156 240 .000 .924 240 .000

Tekstur .162 240 .000 .924 240 .000

Overall .148 240 .000 .927 240 .000

a. Lilliefors Significance Correction

7.7.2. Karakteristik Kimia

7.7.2.1. Aktivitas Antioksidan

Page 3: 7. LAMPIRAN 7.1. Dry Basis) Mi Basah Pasca …repository.unika.ac.id/14867/8/13.70.0108 Rosita...) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi 185Basah Angkak 0%

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a. Mi Basah

ANOVA

Sum of Squares df

Mean Square F Sig.

Aktivitas Antioksidan (WB) Between Groups 18.160 3 6.053 36.977 .000

Within Groups 3.274 20 .164

Total 21.434 23

Aktivitas Antioksidan (DB) Between Groups 18.413 3 6.138 36.988 .000

Within Groups 3.319 20 .166

Total 21.732 23

Post Hoc Tests

Aktivitas Antioksidan (WB)

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3 4

Mi Basah Angkak 0% 6 3.191267E0

Mi Basah Angkak 30% 6 3.704733E0

Mi Basah Angkak 60% 6 4.595767E0

Mi Basah Angkak 90% 6 5.470350E0

Sig. 1.000 1.000 1.000 1.000

Means for groups in homogeneous subsets are displayed.

Aktivitas Antioksidan (DB)

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3 4

Mi Basah Angkak 0% 6 3.212117E0

Mi Basah Angkak 30% 6 3.728650E0

Mi Basah Angkak 60% 6 4.625883E0

Mi Basah Angkak 90% 6 5.506967E0

Sig. 1.000 1.000 1.000 1.000

Means for groups in homogeneous subsets are displayed.

Page 4: 7. LAMPIRAN 7.1. Dry Basis) Mi Basah Pasca …repository.unika.ac.id/14867/8/13.70.0108 Rosita...) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi 185Basah Angkak 0%

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b. Mi Kering

ANOVA

Sum of Squares df

Mean Square F Sig.

Aktivitas Antioksidan (WB) Between Groups 24.827 3 8.276 50.590 .000

Within Groups 3.272 20 .164

Total 28.099 23

Aktivitas Antioksidan (DB) Between Groups 25.183 3 8.394 50.556 .000

Within Groups 3.321 20 .166

Total 28.504 23

Post Hoc Tests Aktivitas Antioksidan (WB)

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3 4

Mi Kering Angkak 0% 6

2.483133E0

Mi Kering Angkak 30% 6 3.210000E

0

Mi Kering Angkak 60% 6 4.119783E

0

Mi Kering Angkak 90% 6 5.200717E

0

Sig. 1.000 1.000 1.000 1.000

Means for groups in homogeneous subsets are displayed.

Aktivitas Antioksidan (DB)

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3 4

Mi Kering Angkak 0% 6

2.499700E0

Mi Kering Angkak 30% 6 3.230400E

0

Mi Kering Angkak 60% 6 4.147617E

0

Mi Kering Angkak 90% 6 5.236283E

0

Sig. 1.000 1.000 1.000 1.000

Means for groups in homogeneous subsets are displayed.

Page 5: 7. LAMPIRAN 7.1. Dry Basis) Mi Basah Pasca …repository.unika.ac.id/14867/8/13.70.0108 Rosita...) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi 185Basah Angkak 0%

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7.7.2.2. Kadar Air

a. Mi Basah

ANOVA

Sum of Squares df

Mean Square F Sig.

Kadar Air (WB) Between Groups 17.125 3 5.708 15.150 .000

Within Groups 7.536 20 .377

Total 24.661 23

Kadar Air (DB) Between Groups 1184.243 3 394.748 15.813 .000

Within Groups 499.258 20 24.963

Total 1683.500 23

Post Hoc Tests Kadar Air (WB)

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3

Mi Basah Angkak 30% 6 6.41057E1

Mi Basah Angkak 0% 6 6.49247E1

Mi Basah Angkak 60% 6 6.50403E1

Mi Basah Angkak 90% 6 6.64547E1

Sig. 1.000 .748 1.000

Means for groups in homogeneous subsets are displayed.

Kadar Air (DB)

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3

Mi Basah Angkak 30% 6 1.7863E2

Mi Basah Angkak 0% 6 1.8525E2

Mi Basah Angkak 60% 6 1.8614E2

Mi Basah Angkak 90% 6 1.9811E2

Sig. 1.000 .762 1.000

Means for groups in homogeneous subsets are displayed.

Page 6: 7. LAMPIRAN 7.1. Dry Basis) Mi Basah Pasca …repository.unika.ac.id/14867/8/13.70.0108 Rosita...) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi 185Basah Angkak 0%

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b. Mi Kering

ANOVA

Sum of Squares df Mean Square F Sig.

Kadar Air (WB) Between Groups 5621.613 3 1873.871 11.960 .000

Within Groups 3133.502 20 156.675

Total 8755.115 23

Kadar Air (DB) Between Groups 77.411 3 25.804 14.456 .000

Within Groups 35.699 20 1.785

Total 113.110 23

Post Hoc Tests Kadar Air (WB)

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2

Mi Kering Angkak 30% 6 1.71014E2

Mi Kering Angkak 0% 6 1.96718E2

Mi Kering Angkak 60% 6 2.03166E2

Mi Kering Angkak 90% 6 2.12155E2

Sig. 1.000 .055

Means for groups in homogeneous subsets are displayed.

Kadar Air (DB)

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2

Mi Kering Angkak 30% 6 63.10083

Mi Kering Angkak 0% 6 66.28633

Mi Kering Angkak 60% 6 66.91700

Mi Kering Angkak 90% 6 67.89300

Sig. 1.000 .061

Means for groups in homogeneous subsets are displayed.

Page 7: 7. LAMPIRAN 7.1. Dry Basis) Mi Basah Pasca …repository.unika.ac.id/14867/8/13.70.0108 Rosita...) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi 185Basah Angkak 0%

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7.7.2.3. pH

a. Mi Basah ANOVA

pH

Sum of Squares df Mean Square F Sig.

Between Groups .006 3 .002 .571 .641

Within Groups .069 20 .003

Total .075 23

Post Hoc Tests pH

Duncan

Perlakuan N

Subset for alpha = 0.05

1

Mi Basah Angkak 0% 6 8.3183

Mi Basah Angkak 90% 6 8.3517

Mi Basah Angkak 30% 6 8.3550

Mi Basah Angkak 60% 6 8.3567

Sig. .314

Means for groups in homogeneous subsets are displayed.

b. Mi Kering ANOVA

pH

Sum of Squares df Mean Square F Sig.

Between Groups .005 3 .002 .371 .775

Within Groups .091 20 .005

Total .096 23

Post Hoc Tests pH

Duncan

Perlakuan N

Subset for alpha = 0.05

1

Mi Kering Angkak 60% 6 8.3067

Mi Kering Angkak 0% 6 8.3083

Mi Kering Angkak 30% 6 8.3283

Mi Kering Angkak 90% 6 8.3417

Sig. .422

Means for groups in homogeneous subsets are displayed.

Page 8: 7. LAMPIRAN 7.1. Dry Basis) Mi Basah Pasca …repository.unika.ac.id/14867/8/13.70.0108 Rosita...) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi 185Basah Angkak 0%

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7.7.3. Karakteristik Fisik

7.7.3.1. Warna

a. Mi Basah

ANOVA

Sum of Squares df Mean Square F Sig.

Warna (L) Between Groups 51.356 3 17.119 74.143 .000

Within Groups 4.618 20 .231

Total 55.974 23

Warna (a*) Between Groups 146.279 3 48.760 808.286 .000

Within Groups 1.207 20 .060

Total 147.486 23

Warna (b*) Between Groups 77.091 3 25.697 54.834 .000

Within Groups 9.373 20 .469

Total 86.463 23

Post Hoc Tests Warna (L)

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3 4

Mi Basah Angkak 90% 6 57.5050

Mi Basah Angkak 60% 6 58.9767

Mi Basah Angkak 30% 6 59.9150

Mi Basah Angkak 0% 6 61.5333

Sig. 1.000 1.000 1.000 1.000

Means for groups in homogeneous subsets are displayed.

Warna (a*)

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3 4

Mi Basah Angkak 0% 6 -.3867

Mi Basah Angkak 30% 6 1.4533

Mi Basah Angkak 60% 6 4.3150

Mi Basah Angkak 90% 6 5.9817

Sig. 1.000 1.000 1.000 1.000

Means for groups in homogeneous subsets are displayed.

Warna (b*)

Page 9: 7. LAMPIRAN 7.1. Dry Basis) Mi Basah Pasca …repository.unika.ac.id/14867/8/13.70.0108 Rosita...) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi 185Basah Angkak 0%

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Duncan

Perlakuan N

Subset for alpha = 0.05

1 2

Mi Basah Angkak 30% 6 9.0133

Mi Basah Angkak 0% 6 12.6250

Mi Basah Angkak 90% 6 13.3100

Mi Basah Angkak 60% 6 13.3583

Sig. 1.000 .093

Means for groups in homogeneous subsets are displayed.

b. Mi Kering ANOVA

Sum of Squares df Mean Square F Sig.

Warna (L) Between Groups 19.368 3 6.456 24.858 .000

Within Groups 5.194 20 .260

Total 24.563 23

Warna (a*) Between Groups 143.158 3 47.719 380.544 .000

Within Groups 2.508 20 .125

Total 145.666 23

Warna (b*) Between Groups 24.815 3 8.272 45.258 .000

Within Groups 3.655 20 .183

Total 28.470 23

Post Hoc Tests Warna (L)

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3

Mi Kering Angkak 60% 6 57.4967

Mi Kering Angkak 90% 6 57.5533

Mi Kering Angkak 30% 6 58.3367

Mi Kering Angkak 0% 6 59.7233

Sig. .849 1.000 1.000

Means for groups in homogeneous subsets are displayed.

Page 10: 7. LAMPIRAN 7.1. Dry Basis) Mi Basah Pasca …repository.unika.ac.id/14867/8/13.70.0108 Rosita...) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi 185Basah Angkak 0%

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Warna (a*)

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3 4

Mi Kering Angkak 0% 6 -.8167

Mi Kering Angkak 30% 6 1.4267

Mi Kering Angkak 60% 6 3.9100

Mi Kering Angkak 90% 6 5.6183

Sig. 1.000 1.000 1.000 1.000

Means for groups in homogeneous subsets are displayed.

Warna (b*)

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3 4

Mi Kering Angkak 30% 6 11.0950

Mi Kering Angkak 60% 6 12.6717

Mi Kering Angkak 90% 6 13.2383

Mi Kering Angkak 0% 6 13.8267

Sig. 1.000 1.000 1.000 1.000

Means for groups in homogeneous subsets are displayed.

7.7.3.2. Tensile Strength

a. Mi Basah

ANOVA

Tensile Strengh

Sum of Squares df Mean Square F Sig.

Between Groups .003 3 .001 38.315 .000

Within Groups .001 36 .000

Total .004 39

Post Hoc Tests Tensile Strengh

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3 4

Mi Basah Angkak 90% 10 .0937650

Mi Basah Angkak 60% 10 .1027380

Mi Basah Angkak 30% 10 .1092190

Mi Basah Angkak 0% 10 .1177480

Sig. 1.000 1.000 1.000 1.000

Page 11: 7. LAMPIRAN 7.1. Dry Basis) Mi Basah Pasca …repository.unika.ac.id/14867/8/13.70.0108 Rosita...) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi 185Basah Angkak 0%

60

Tensile Strengh

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3 4

Mi Basah Angkak 90% 10 .0937650

Mi Basah Angkak 60% 10 .1027380

Mi Basah Angkak 30% 10 .1092190

Mi Basah Angkak 0% 10 .1177480

Sig. 1.000 1.000 1.000 1.000

Means for groups in homogeneous subsets are displayed.

b. Mi Kering ANOVA

Tensile Strengh

Sum of Squares df Mean Square F Sig.

Between Groups .010 3 .003 68.300 .000

Within Groups .002 36 .000

Total .012 39

Post Hoc Tests Tensile Strengh

Duncan

Perlakuan N

Subset for alpha = 0.05

1 2 3 4

Mi Kering Angkak 90% 10 .1051680

Mi Kering Angkak 60% 10 .1128330

Mi Kering Angkak 30% 10 .1350100

Mi Kering Angkak 0% 10 .1443400

Sig. 1.000 1.000 1.000 1.000

Means for groups in homogeneous subsets are displayed.

7.7.4. Sensori

7.7.4.1. Mi Basah

Kruskal-Wallis Test Test Statistics

a,b

Warna Tekstur Overall

Chi-Square 16.617 31.958 31.065

df 3 3 3

Asymp. Sig. .001 .000 .000

a. Kruskal Wallis Test

b. Grouping Variable: Perlakuan

Page 12: 7. LAMPIRAN 7.1. Dry Basis) Mi Basah Pasca …repository.unika.ac.id/14867/8/13.70.0108 Rosita...) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi 185Basah Angkak 0%

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Mann-Whitney Test

a. Angkak 0% VS Angkak 30%

Test Statistics

a

Warna Tekstur Overall

Mann-Whitney U 305.000 294.000 267.000

Wilcoxon W 770.000 759.000 732.000

Z -2.211 -2.383 -2.790

Asymp. Sig. (2-tailed) .027 .017 .005

a. Grouping Variable: Perlakuan

b. Angkak 0% VS Angkak 60%

Test Statistics

a

Warna Tekstur Overall

Mann-Whitney U 205.000 117.500 118.500

Wilcoxon W 670.000 582.500 583.500

Z -3.692 -5.017 -4.985

Asymp. Sig. (2-tailed) .000 .000 .000

a. Grouping Variable: Perlakuan

c. Angkak 0% VS Angkak 90%

Test Statistics

a

Warna Tekstur Overall

Mann-Whitney U 286.000 185.500 204.000

Wilcoxon W 751.000 650.500 669.000

Z -2.487 -4.007 -3.718

Asymp. Sig. (2-tailed) .013 .000 .000

a. Grouping Variable: Perlakuan

d. Angkak 30% VS Angkak 60%

Test Statistics

a

Warna Tekstur Overall

Mann-Whitney U 277.500 236.000 229.000

Wilcoxon W 742.500 701.000 694.000

Z -2.639 -3.233 -3.333

Asymp. Sig. (2-tailed) .008 .001 .001

a. Grouping Variable: Perlakuan

Page 13: 7. LAMPIRAN 7.1. Dry Basis) Mi Basah Pasca …repository.unika.ac.id/14867/8/13.70.0108 Rosita...) Mi Basah Pasca Perebusan Perlakuan Kadar Air (% Dry Basis) Mi 185Basah Angkak 0%

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e. Angkak 30% VS Angkak 90%

Test Statistics

a

Warna Tekstur Overall

Mann-Whitney U 383.000 336.500 358.000

Wilcoxon W 848.000 801.500 823.000

Z -1.013 -1.715 -1.393

Asymp. Sig. (2-tailed) .311 .086 .163

a. Grouping Variable: Perlakuan

f. Angkak 60% VS Angkak 90%

Test Statistics

a

Warna Tekstur Overall

Mann-Whitney U 378.500 321.500 335.500

Wilcoxon W 843.500 786.500 800.500

Z -1.078 -1.971 -1.727

Asymp. Sig. (2-tailed) .281 .049 .084

a. Grouping Variable: Perlakuan

7.7.4.2. Mi Kering

Kruskal-Wallis Test

Test Statisticsa,b

Warna Tekstur Overall

Chi-Square 4.760 25.324 17.119

df 3 3 3

Asymp. Sig. .190 .000 .001

a. Kruskal Wallis Test

b. Grouping Variable: Perlakuan

Mann-Whitney Test

a. Angkak 0% VS Angkak 30%

Test Statisticsa

Warna Tekstur Overall

Mann-Whitney U 341.500 449.000 400.000

Wilcoxon W 806.500 914.000 865.000

Z -1.651 -.015 -.762

Asymp. Sig. (2-tailed) .099 .988 .446

a. Grouping Variable: Perlakuan

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b. Angkak 0% VS Angkak 60%

Test Statisticsa

Warna Tekstur Overall

Mann-Whitney U 306.500 197.000 230.000

Wilcoxon W 771.500 662.000 695.000

Z -2.187 -3.819 -3.322

Asymp. Sig. (2-tailed) .029 .000 .001

a. Grouping Variable: Perlakuan

c. Angkak 0% VS Angkak 90%

Test Statisticsa

Warna Tekstur Overall

Mann-Whitney U 383.500 245.500 268.000

Wilcoxon W 848.500 710.500 733.000

Z -1.008 -3.086 -2.768

Asymp. Sig. (2-tailed) .313 .002 .006

a. Grouping Variable: Perlakuan

d. Angkak 30% VS Angkak 60%

Test Statisticsa

Warna Tekstur Overall

Mann-Whitney U 410.000 189.500 254.000

Wilcoxon W 875.000 654.500 719.000

Z -.610 -3.949 -2.992

Asymp. Sig. (2-tailed) .542 .000 .003

a. Grouping Variable: Perlakuan

e. Angkak 30% VS Angkak 90%

Test Statisticsa

Warna Tekstur Overall

Mann-Whitney U 421.000 236.000 305.000

Wilcoxon W 886.000 701.000 770.000

Z -.437 -3.230 -2.226

Asymp. Sig. (2-tailed) .662 .001 .026

a. Grouping Variable: Perlakuan

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f. Angkak 60% VS Angkak 90%

Test Statisticsa

Warna Tekstur Overall

Mann-Whitney U 401.000 416.000 381.000

Wilcoxon W 866.000 881.000 846.000

Z -.742 -.516 -1.059

Asymp. Sig. (2-tailed) .458 .606 .290

a. Grouping Variable: Perlakuan